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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Single-Receiver Over-the-Air Digital Predistortion for Massive MIMO Transmitters With Antenna Crosstalk
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Single-Receiver Over-the-Air Digital Predistortion for Massive MIMO Transmitters With Antenna Crosstalk

机译:具有天线串扰的大规模MIMO发射机的单接收机空中数字预失真

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摘要

In this article, a novel digital predistortion (DPD) technique considering antenna crosstalk and using over-the-air (OTA) measurements is proposed for massive multiple-input multiple-output (mMIMO) transmitters. In the proposed DPD for hybrid beamforming with regular matrix array, all subarrays share an integrated linear crosstalk model (ICTM) block, a signal decomposition (SD) block, and a single receiver (SR) to reduce hardware complexity and cost greatly. Subarray coupling coefficients can be identified for the ICTM block without direct measurements. Using the SD block, receiving-end signals can be distinguished as feedback signals for each subarray from one feedback signal from SR. The receiving-end signals for each subarray can be linearized by a modified dual-input predistorter as per the distinguished feedback signals. For the special case of fully digital beamforming, the proposed DPD is the same as for hybrid beamforming. Simulation of eight-subarray hybrid beamforming transmitter is given to validate how the proposed DPD scales to mMIMO scenarios. Experimental results of three-subarray hybrid beamforming transmitter are provided, which indicate that the proposed DPD can achieve the similar linearization performance with less complexity, compared with the state-of-the-art dual-input with crosstalk and mismatch model (DI-CTMM) DPD.
机译:在本文中,针对大规模多输入多输出(mMIMO)发射机,提出了一种考虑天线串扰并使用空中(OTA)测量的新颖数字预失真(DPD)技术。在提出的用于具有规则矩阵阵列的混合波束成形的DPD中,所有子阵列共享一个集成的线性串扰模型(ICTM)块,一个信号分解(SD)块和一个接收器(SR),以大大降低硬件复杂性和成本。无需直接测量即可确定ICTM模块的子阵列耦合系数。使用SD模块,可以将接收端信号与来自SR的一个反馈信号区别为每个子阵列的反馈信号。每个子阵列的接收端信号都可以根据修改后的双输入预失真器根据不同的反馈信号进行线性化处理。对于全数字波束成形的特殊情况,建议的DPD与混合波束成形相同。给出了八子阵列混合波束成形发射机的仿真结果,以验证所提出的DPD如何扩展到mMIMO场景。提供了三子阵列混合波束成形发射机的实验结果,表明与具有串扰和失配模型(DI-CTMM)的最新双输入相比,所提出的DPD可以实现类似的线性化性能,并且复杂度更低)DPD。

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